Systems, methods, and apparatus for efficient vehicle fleet tracking, deployment, and management
Abstract
Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for efficiently managing fleet asset activities. In one aspect, a method includes establishing a plurality of vehicle activity stages including a source geozone, a destination geozone, a source-destination transit geozone, and a destination-source transit geozone; receiving sensed data from a sensor over a network, where the sensor is situated on an asset; storing the sensed data in a data store as stored data; generating a time bar display based on the stored data, where the time bar display depicts the asset's location relative to the source geozone and the destination geozone; monitoring the time bar display for a deviation from a staggered operating pattern; and sending an update to the asset to correct for the deviations from the staggered operating pattern, where the update brings the asset back into the staggered operating pattern.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A method for efficiently managing tracked assets, comprising the steps of:
establishing a plurality of vehicle activity stages including a source geozone, a destination geozone, a source-destination transit geozone, and a destination-source transit geozone, wherein the source geozone represents a first geographic area, wherein the destination geozone represents a second geographic area, wherein the source-destination transit geozone represents a third geographic area connecting the first geographic area and the second geographic area, and wherein the destination-source transit geozone represents a fourth geographic area connecting the second geographic area and the first geographic area; periodically receiving sensed data from a sensor over a network, wherein the sensor is a mobile device situated on an asset; storing the sensed data in a data store as stored data; generating a time bar display based on the stored data, wherein the time bar display depicts the asset's location relative to the source geozone and the destination geozone; monitoring the time bar display for a deviation from a staggered operating pattern; and sending an update to the asset to correct for the deviations from the staggered operating pattern, wherein the update brings the asset back into the staggered operating pattern.
2 . The method of claim 1 , further comprising the step of:
generating a quadrant graph display based on the stored data, the quadrant graph display depicting a quantity representing how many assets are located in each respective vehicle activity stage.
3 . The method of claim 2 , wherein:
the source geozone comprises a plurality of source geozones; the destination geozone comprises a plurality of destination geozones; the sensor comprises a plurality of sensors; the asset comprises a plurality of assets; and the update comprises a plurality of updates.
4 . The method of claim 1 , further comprising the step of:
establishing a source subgeozone within the source geozone and a destination subgeozone within the destination geozone.
5 . The method of claim 4 , wherein:
the source subgeozone comprises a plurality of source subgeozones; and the destination subgeozone comprises a plurality of destination subgeozones.
6 . A system for optimally managing vehicle resource allocation, comprising:
a plurality of vehicle activity stages including a source geozone, a destination geozone, a source-destination transit geozone, and a destination-source transit geozone, wherein the source geozone represents a first geographic area, wherein the destination geozone represents a second geographic area, wherein the source-destination transit geozone represents a third geographic area connecting the first geographic area and the second geographic area, and wherein the destination-source transit geozone represents a fourth geographic area connecting the second geographic area and the first geographic area; a sensor situated on an asset that traverses the plurality of vehicle activity stages, wherein the sensor is part of a mobile device that senses operating data from the asset; a datastore that stores operating data, wherein the datastore stores the operating data as stored data; and a generated time bar display depicting the stored data, wherein the time bar display depicts the asset's location relative to the source geozone and the destination geozone over a period of time, wherein the generated time bar display depicts a pattern illustrating asset usage.
7 . The system of claim 6 , wherein an optimal pattern is a staggered operating pattern.
8 . The system of claim 7 , further comprising:
an update addressable to the asset, wherein the update corrects for deviations from the staggered operating pattern, wherein the update brings the asset back into the staggered operating pattern.
9 . The system of claim 6 , further comprising:
a generated quadrant graph display based on the stored data, the generated quadrant graph display depicting a quantity representing how many assets are located in each respective vehicle activity stage.
10 . The system of claim 6 , wherein:
the source geozone comprises a plurality of source geozones; the destination geozone comprises a plurality of destination geozones; the sensor comprises a plurality of sensors; and the asset comprises a plurality of assets.
11 . The system of claim 8 , wherein the update comprises a plurality of updates.
12 . The system of claim 6 , further comprising:
a source subgeozone disposed within the source geozone; and a destination subgeozone disposed within the destination geozone.
13 . The system of claim 12 , wherein:
the source subgeozone comprises a plurality of source subgeozones; and the destination subgeozone comprises a plurality of destination subgeozones.
14 . A method for categorizing and optimizing asset fleet activity, comprising the steps of:
setting a first geographic area as a first geozone and a second geographic area as a second geozone; receiving and storing sensed data from a fleet asset as stored data; analyzing stored data for geolocation information; generating time bars based on the geolocation information relative to the first geozone and the second geozone; and displaying the time bars in an interface, wherein the time bars present a fleet pattern and wherein the fleet pattern allows enables management of allocation of the fleet asset.
15 . The method of claim 14 , further comprising the steps of:
generating a corrective update when the fleet pattern deviates from a desired pattern type; and sending the corrective update to increase efficiency of the allocation of the fleet asset.
16 . The method of claim 14 , further comprising the step of:
generating a quadrant graph display based on the stored data, the quadrant graph display depicting a quantity representing how many assets are located in the first geozone and the second geozone.
17 . The method of claim 14 , further comprising the step of:
establishing a first subgeozone within the first geozone and a second subgeozone within the second geozone.
18 . The method of claim 15 , wherein:
the first geozone comprises a plurality of first geozones; the second geozone comprises a plurality of second geozones; the fleet asset comprises a plurality of fleet assets; and the corrective update comprises a plurality of corrective updates.
19 . The method of claim 18 , wherein:
the first subgeozone comprises a plurality of first subgeozones; and the second subgeozone comprises a plurality of second subgeozones.
20 . The method of claim 14 wherein the desired pattern type is a staggered operating pattern.Join the waitlist — get patent alerts
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